참고문헌
- Anuradha, R., Sreevidya, V., Venkatasubramani, R. and Rangan, B.V. (2012), "Modified guidelines for geopolymer concrete mix design using Indian standard", Asian J. Civil Eng., 13(3), 353-364.
- Behzad, N., Jay, S. and Faiz, U.A.S. (2014), "Synthesis of heat and ambient cured one-part geopolymer mixes with different grades of sodium silicate", Ceram. Int.
- BIS-383 (1970), Specification for Coarse and Fine Aggregates from Natural Sources for Concrete.
- BIS: 516 (1956), Indian Standard Methods of Tests for Strength of Concrete.
- Davidovits, J. (1978), Synthetic Mineral Polymer Compound of the Silicoaluminate Family and Preparation Process, US Patent, 4472199.
- Fernandez-Jimenez, A. and Puertas, F. (2002), "The alkali-silica reaction in alkali-activated granulated slag mortars with reactive aggregate", Cement Concrete Res., 32, 1019-1024. https://doi.org/10.1016/S0008-8846(01)00745-1
- Ganesan, N., Sahana, R. and Indira, P.V. (2017), "Effect of hybrid fibers on tension stiffening of reinforced geopolymer concrete", Adv. Concrete Constr., 5(1), 75-86. https://doi.org/10.12989/acc.2017.5.1.75
- Hall, C. (1989) "Water sorptivity of mortars and concrete: A review", Mag. Concrete Res., 41(147), 51-61. https://doi.org/10.1680/macr.1989.41.147.51
- Hardjito, D., Wallah, S.E., Sumajouw, D.M.J. and Rangan, B.V. (2004), "On the development of fly ashbased geopolymer concrete", ACI Mater. J., 101(6), 467-472.
- Janardhanan, T. and Ramasamy, V. (2015), "Feasibility studies on compressive strength of ground coal ash geopolymer mortar", Per. Polytech., 59(3), 373-379.
- Jindal, B.B., Singhal, D., Sharma, S.K., Ashish, D.K. and Parveen. (2017), "Improving compressive strength of low calcium fly ash geopolymer concrete with alccofine", Adv. Concrete Constr., 5(1), 17-29. https://doi.org/10.12989/acc.2017.5.1.17
- Manjunatha, G.S., Radhakrishna, K.V. and Sasalatti, V.M. (2014), "Strength characteristics of open air cured geopolymer concrete", Trans. Ind. Ceram. Soc., 73(2), 149-156. https://doi.org/10.1080/0371750X.2014.923330
-
Mustata, A.B., Kamarudin, H., Bnhussain, M., Rafiza, A.R. and Zarlna, Y. (2012), "Effect of
$Na_2SiO_3$ /NaOH ratios and NaOH molarities on compressive strength of fly-ash-based geopolymer", ACI Mater. J., 109(5). - Papworth, F. and Grace, W. (1985), "Designing for concrete durability in marine environments", Proceedings of the Concrete 85 Conference, Brisbane, Austrailia.
- Pinto, A. (2004), "Alkali-activated metakaolin based binders", Ph.D. Dissertaiton, University of Minho, Portugal.
- Pradip, N. and Prabir, K.S. (2014), "Effect of GGBFS on setting, workability and early strength properties of fly ash geopolymer concrete cured in ambient condition", Constr. Build. Mater., 66, 163-171. https://doi.org/10.1016/j.conbuildmat.2014.05.080
- Puertas, F., Martinez-Ramirez, S., Alonso, S. and Vazquez, T. (2004), "Alkali activated fly ash/slag cement strength behavior and hydration products", Cement Concrete Res., 30, 1625-1632.
- Rangan, B.V. (2008) "Mix design and production of fly ash based geopolymer concrete", Ind. Concrete J., 82, 7-15.
- Rao, G., Tippabhotla, D., Alfrite, P., Mallikarjuna, R.G. and Andal, M. (2015), "Fracture parameters of fly ash and GGBS based geopolymer concrete", Appl. Mech. Mater., 764, 1090-1094.
- Rao, G.M. and Rao, T.D. (2016), "Sulphuric acid and nitric acid attack on fly ash and GGBS based geopolymer concrete", Proceedings of the International Conference on Trends and Recent Advances in Civil Engineering.
- Rao, G.M. and Rao, T.G. (2015), "Final setting time and compressive strength of fly ash and GGBS-based geopolymer paste and mortar", Arab. J. Sci. Eng., 40(11) 3067-3074. https://doi.org/10.1007/s13369-015-1757-z
- Rao, G.M., Rao, T.D., Seshu, D.R. and Venkatesh, A. (2016), "Mix proportioning of geopolymer concrete", Cement Wapno Beton, 21(4), 285.
- Subhash, V., Patankar, S.S., Jamkar, Y.M. and Ghugal. (2013), "Effect of water-to-geopolymer binder ratio on the production of fly ash based geopolymer concrete", J. Adv. Technol. Civil Eng., 2(1).
- Talha, J.M., Obada, K., Amar, K. and Jarvis, B. (2015), "A mix design procedure for low calcium alkali activated fly ash-based concretes", Constr. Build. Mater., 79, 301-310. https://doi.org/10.1016/j.conbuildmat.2015.01.048
- Vinothini, M., Mallikarjun, G., Gunneswararao, T.D. and Ramaseshu, D. (2015), "Bond strength behaviour of geopolymer concrete", Malays. J. Civil Eng., 27(3), 35-45.
- Wang, S.D., Pu, X.C., Scrivener, K.L. and Pratt, P.L. (1995), "Alkali-activated slag cement and concrete: A review of properties and problems", Adv. Cement Res., 27, 93-102.
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- Correlation study on microstructure and mechanical properties of rice husk ash-Sodium aluminate geopolymer pastes vol.11, pp.1, 2017, https://doi.org/10.12989/acc.2021.11.1.073
- Effect of molar ratios on strength, microstructure & embodied energy of metakaolin geopolymer vol.11, pp.2, 2021, https://doi.org/10.12989/acc.2021.11.2.127
- Mechanical and durability properties of concrete incorporating glass and plastic waste vol.11, pp.2, 2017, https://doi.org/10.12989/acc.2021.11.2.173